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Impact assessment for the improved boundary conditions (at bed, free-surface, land-boundary and offshore-boundary) on coastal hydrodynamics and particulate transport

机译:评估改进的边界条件(在河床,自由表面,陆地边界和近海边界)对沿海水动力和颗粒物运输的影响评估

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摘要

The FIELD_AC project aims at providing an improved operational service for coastal areas and at generating added value for shelf and regional scale predictions. Coastal-zone oceanographic predictions seldom appraise the land discharge as a boundary condition. River fluxes are sometimes considered, but neglecting their 3D character, while the "distributed" continental run-off is not taken into consideration. Moreover, many coastal scale processes, particularly those relevant in geographically restricted domains (coast with harbors or river mouth areas), are not well parametrized in present simulations.Work package 3 dedicated to Boundary Fluxes aims to establish and use the best possible boundary conditions for coastal water quality modelling. On this scale, all boundaries become important. For the land boundary side the needed products are distributed and point wise run-off both quantitatively and qualitatively. For the offshore boundary condition, 3D current, water quality field, and wave spectra will be used. For the atmospheric boundary, products from local scale meteorological models (wind, atmospheric pressure and rainfall) are needed. For the seabed, boundary information on sediment composition, bedforms and bathymetry and bio-geo-chemical parameters is essential.This report addresses the impact assessment for improvements in the four boundary conditions (boundary fluxes from land, free-surface boundary condition, seabed boundary condition and open boundary fluxes) on coastal hydrodynamics and particulate transport. The description of the improved four boundary conditions is followed by examples of concrete impact assessment of the theory into the Catalan coast, Liverpool Bay, German Bight and Gulf of Venice.
机译:FIELD_AC项目旨在为沿海地区提供改进的运营服务,并为架子和区域规模的预测产生附加值。沿海地区的海洋学预测很少将陆地流量评估为边界条件。有时会考虑河流通量,但忽略了其3D角色,而未考虑“分布式”大陆径流。此外,许多沿海规模过程,特别是那些与地理区域相关的过程(包括港口或河口地区的海岸),在当前的模拟中并未得到很好的参数化。致力于边界通量的工作包3旨在为边界通量建立和使用最佳边界条件。沿海水质建模。在这种规模上,所有边界都变得重要。对于陆地边界,需要的产品在数量上和质量上均得到分配和逐点径流。对于海上边界条件,将使用3D电流,水质场和波谱。对于大气边界,需要使用地方尺度的气象模型(风,大气压和降雨)的产品。对于海床来说,关于沉积物成分,地貌和测深法以及生物地球化学参数的边界信息是必不可少的。本报告针对四个边界条件(来自陆地的边界通量,自由表面边界条件,海床边界)的改善进行影响评估。条件和开放边界通量)对沿海水动力和颗粒物运输的影响。在改进的四个边界条件的描述之后,将举例说明该理论对加泰罗尼亚海岸,利物浦湾,德国湾和威尼斯湾的影响。

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